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Biochar is an effective amendment to remediate Cd-contaminated soils-a meta-analysis

机译:生物炭是修复CD污染的土壤的有效修正 - 一种荟萃分析

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摘要

Purpose Cd immobilization can be affected by many factors, among which the soil pH, soil organic matter (SOM), and amendment types are the most critical factors that have been considered in many previous studies. The objective of this study was to find the amendments with best performance for Cd remediation in soils with different range of soil pH and SOM. Materials and methods The effects of soil pH, SOM, and amendment types on soil Cd fractions and Cd uptake by rice were investigated by meta-analysis performed on MetaWin software, based on relevant data of 513 observations from 51 published papers that studied the soil fields in China from 2000 to 2020. Results and discussion Cd immobilization was more responsive to amendments when soil pH = 6.0 as compared with those with pH higher than 6.0, which is probably because most amendments increased the soil pH and thus decreased the Cd activity. The Cd immobilization was most effective with the presence of 20-30 g/kg SOM; excessive SOM activated Cd in soil. Synthetic material appeared to be the most effective amendment on immobilization of the exchangeable fraction of Cd in soil by 42.5% inhibition rate. Biochar showed the strongest inhibition effect on the Cd uptake by rice (65.2% inhibition rate), while organic material exhibited the lowest immobilization effect. Conclusions We demonstrated that amendments showed best performance under conditions of soil pH = 6.0 and SOM of 20-30 g/kg, and biochar is an effective amendment to remediate Cd-contaminated soils. The findings enable us to remediate Cd contamination on farmland more effectively and efficiently according to the local conditions.
机译:目的CD固定化可能受到许多因素的影响,其中土壤pH,土壤有机物(SOM)和修正类型是在以前的许多研究中考虑的最关键因素。本研究的目的是找到具有不同范围土壤pH和SOM的土壤中CD修复最佳性能的修正。通过在Metawin软件上进行的Meta-Displation,研究了土壤pH,SOM和修正类型对土壤CD级分和稻米的疗效,基于51篇关于研究土壤田的51篇发表论文的观察结果,研究了水稻土壤CD分数和镉的摄取。从2000年到2020年。结果和讨论CD固定化对修正案更加敏感,当土壤pH <= 6.0相比,与pH值高于6.0,这可能是因为大多数修正都增加了土壤pH并因此降低了CD活性。 CD固定化最有效地存在20-30g / kg SOM;土壤中过量的SOM激活CD。合成材料似乎是最有效的修正土壤中可交换级数的可换量分数42.5%的抑制率。生物炭表现出对水稻的CD吸收的最强的抑制作用(65.2%抑制率),而有机材料表现出最低的固定效果。结论我们证明,修正案在20-30克/千克的土壤pH <= 6.0和SOM的条件下表现出最佳性能,Biochar是对修复CD污染土壤的有效修正。调查结果使我们能够根据当地条件更有效和高效地修复农田的CD污染。

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  • 来源
    《Journal of soils & sediments》 |2020年第11期|3884-3895|共12页
  • 作者单位

    Shenyang Agr Univ Coll Land & Environm Minist Agr & Rural Affairs Natl Engn Lab Efficient Utilizat Soil & Fertilize Northeast Key Lab Conservat & Improvement Cultiva Shenyang 110866 Peoples R China;

    Univ Birmingham Sch Geog Earth & Environm Sci Birmingham B15 2TT W Midlands England;

    Shenyang Agr Univ Coll Land & Environm Minist Agr & Rural Affairs Natl Engn Lab Efficient Utilizat Soil & Fertilize Northeast Key Lab Conservat & Improvement Cultiva Shenyang 110866 Peoples R China;

    Shenyang Agr Univ Coll Land & Environm Minist Agr & Rural Affairs Natl Engn Lab Efficient Utilizat Soil & Fertilize Northeast Key Lab Conservat & Improvement Cultiva Shenyang 110866 Peoples R China;

    Shenyang Agr Univ Coll Land & Environm Minist Agr & Rural Affairs Natl Engn Lab Efficient Utilizat Soil & Fertilize Northeast Key Lab Conservat & Improvement Cultiva Shenyang 110866 Peoples R China;

    Shenyang Agr Univ Coll Land & Environm Minist Agr & Rural Affairs Natl Engn Lab Efficient Utilizat Soil & Fertilize Northeast Key Lab Conservat & Improvement Cultiva Shenyang 110866 Peoples R China;

    Shenyang Agr Univ Coll Land & Environm Minist Agr & Rural Affairs Natl Engn Lab Efficient Utilizat Soil & Fertilize Northeast Key Lab Conservat & Improvement Cultiva Shenyang 110866 Peoples R China;

    Shenyang Agr Univ Coll Land & Environm Minist Agr & Rural Affairs Natl Engn Lab Efficient Utilizat Soil & Fertilize Northeast Key Lab Conservat & Improvement Cultiva Shenyang 110866 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Amendments; Cadmium; Metal pollution; Organic inputs; Biochar;

    机译:修正;镉;金属污染;有机投入;生物炭;

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